von Wrede Randi, Bröhl Timo, Rings Thorsten, Pukropski Jan, Helmstaedter Christoph, Lehnertz Klaus
Department of Epileptology, University Hospital Bonn, 53127 Bonn, Germany.
Helmholtz-Institute for Radiation and Nuclear Physics, University of Bonn, 53115 Bonn, Germany.
Brain Sci. 2022 Apr 26;12(5):546. doi: 10.3390/brainsci12050546.
Transcutaneous auricular vagus nerve stimulation (taVNS) is a novel non-invasive treatment option for different diseases and symptoms, such as epilepsy or depression. Its mechanism of action, however, is still not fully understood. We investigated short-term taVNS-induced changes of local and global properties of EEG-derived, evolving functional brain networks from eighteen subjects who underwent two 1 h stimulation phases (morning and afternoon) during continuous EEG-recording. In the majority of subjects, taVNS induced measurable modifications of network properties. Network alterations induced by stimulation in the afternoon were clearly more pronounced than those induced by stimulation in the morning. Alterations mostly affected the networks' topology and stability properties. On the local network scale, no clear-cut spatial stimulation-related patterns could be discerned. Our findings indicate that the possible impact of diurnal influences on taVNS-induced network modifications would need to be considered for future research and clinical studies of this non-pharmaceutical intervention approach.
经皮耳迷走神经刺激(taVNS)是一种针对不同疾病和症状(如癫痫或抑郁症)的新型非侵入性治疗方法。然而,其作用机制仍未完全明确。我们对18名受试者进行了研究,这些受试者在连续脑电图记录期间接受了两个1小时的刺激阶段(上午和下午),我们调查了taVNS对源自脑电图的不断演变的功能性脑网络的局部和全局特性的短期影响。在大多数受试者中,taVNS引起了网络特性的可测量变化。下午刺激引起的网络改变明显比上午刺激引起的更显著。改变主要影响网络的拓扑结构和稳定性。在局部网络层面,未发现明确的与刺激相关的空间模式。我们的研究结果表明,对于这种非药物干预方法的未来研究和临床研究,需要考虑昼夜影响对taVNS引起的网络改变可能产生的影响。